Ogasawara Yasushi, Fujimori Michiko, Kawata Junpei, Dairi Tohru
Graduate School of Engineering, Hokkaido University, N 13 W 8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan.
Graduate School of Engineering, Hokkaido University, N 13 W 8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan.
Bioorg Med Chem Lett. 2016 Aug 1;26(15):3662-4. doi: 10.1016/j.bmcl.2016.05.090. Epub 2016 Jun 1.
We recently reported a novel class of amide bond forming enzymes (peptide ligases) involved in the biosynthesis of pheganomycins, resorcinomycins and ketomemicins. This class of enzymes exclusively utilizes Nα-amidino amino acids as the N-terminal substrate. In this Letter, we characterized three new amidinotransferases involved in the biosynthesis of ketomemicins and showed that l-arginine was the amidino-acceptor of amidinotransferases in both the Micromonospora sp. and Streptomyces mobaraensis clusters, while the Salinispora tropica enzyme recognized l-valine. Unexpectedly, the S. tropica enzyme accepted several different amino acids as amidino acceptors in addition to l-valine. Accordingly, we re-investigated the specific metabolites governed by the gene cluster of S. tropica and identified several minor congeners of ketomemicin C with different N-terminal amidino-amino acids. These results indicate that the amidinotransferase of S. tropica is promiscuous and could be useful to generate new ketomemicin-type natural products.
我们最近报道了一类参与费加霉素、间苯二酚霉素和酮米霉素生物合成的新型酰胺键形成酶(肽连接酶)。这类酶专门利用Nα-脒基氨基酸作为N端底物。在这篇快报中,我们对参与酮米霉素生物合成的三种新的脒基转移酶进行了表征,并表明在小单孢菌属和茂原链霉菌基因簇中,L-精氨酸是脒基转移酶的脒基受体,而热带盐单胞菌的酶识别L-缬氨酸。出乎意料的是,除L-缬氨酸外,热带盐单胞菌的酶还接受几种不同的氨基酸作为脒基受体。因此,我们重新研究了热带盐单胞菌基因簇控制的特定代谢产物,并鉴定出几种具有不同N端脒基氨基酸的酮米霉素C的次要同系物。这些结果表明,热带盐单胞菌的脒基转移酶具有混杂性,可能有助于生成新的酮米霉素型天然产物。